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Removal of Magnesium from Liquor Produced by Nickel Mining by Crystallization

机译:结晶法去除镍开采产生的酒中的镁

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Mining of nickel ores generates large volumes of waste that must be removed in order to eliminate water contamination and reduce environmental impacts created by waste barriers. In this context, the need for innovations concerning the recovery of magnesium present in the liquor produced by the leaching of nickel laterite with sulfuric acid arises. Therefore, this work aims to develop a study regarding the crystallization of magnesium from a synthetic liquor solution using a batch autoclave system at high temperature. Agitation speed was kept constant at 1000 rpm throughout the 3 h of batch reaction for temperatures of 230 and 200 ℃. Aliquots taken at each hour were analyzed by ion chromatography to measure magnesium concentration. The highest magnesium removal was observed for temperature 230 ℃. X-ray diffraction (XRD) and scanning electron microscopy (EDS-SEM) analysis proved that the product formed was magnesium sulphate monohydrate crystals. Thermogravimetric analysis coupled with a mass spectrometer was used for the evaluation of the thermal stability of magnesium sulphate monohydrate. It was found that MgO and SO_2 were formed by the decomposition of the salt at 1100 ℃.
机译:镍矿石开采会产生大量废物,必须消除这些废物,以消除水污染并减少废物屏障对环境的影响。在这种情况下,需要进行创新以回收存在于硫酸中浸出红土镍所产生的酒液中的镁。因此,这项工作旨在开展有关使用间歇式高压釜系统在高温下从合成溶液中结晶镁的研究。在分批反应的3小时内,对于230和200℃的温度,搅拌速度保持恒定在1000 rpm。通过离子色谱分析每小时提取的等分试样以测量镁浓度。在230℃的温度下观察到最高的镁去除率。 X射线衍射(XRD)和扫描电子显微镜(EDS-SEM)分析证明形成的产物是硫酸镁一水合物晶体。热重分析结合质谱仪用于评估硫酸镁一水合物的热稳定性。结果表明,在1100℃下,盐分分解形成MgO和SO_2。

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